Plant diversity increases diversity and network complexity rather than alters community assembly processes of leaf-associated fungi in a subtropical forest.

IF 8 2区 生物学 Q1 BIOLOGY
Science China Life Sciences Pub Date : 2025-03-01 Epub Date: 2024-10-18 DOI:10.1007/s11427-024-2630-6
Jie Li, Xing-Chun Li, Hui-Yun Gan, Yue Zhang, Zi-Xuan Guo, Yu-Xuan Liu, Yong-Qing Lin, Liang-Dong Guo
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引用次数: 0

Abstract

Plant diversity significantly impacts ecosystem processes and functions, yet its influence on the community assembly of leaf fungi remains poorly understood. In this study, we investigated leaf epiphytic and endophytic fungal communities in a Chinese subtropical tree species richness experiment, ranging from 1 to 16 species, using amplicon sequencing to target the internal transcribed spacer 1 region of the rDNA. We found that the community assembly of epiphytic and endophytic fungi was predominantly governed by stochastic processes, with a higher contribution of dispersal limitation on epiphytic than on endophytic fungal communities but a higher contribution of selection on endophytic than on epiphytic fungal communities. The plant-epiphytic fungus interaction network was more complex (e.g., more highly connected and strongly nested but less specialized and modularized) than the plant-endophytic fungus interaction network. Additionally, tree species richness was positively correlated with the network complexity and diversity of epiphytic (α-, β- and γ-diversity) and endophytic (β- and γ-diversity) fungi, but was not associated with the contribution of the stochastic and deterministic processes on the community assembly of epiphytic and endophytic fungi. This study highlights that tree species diversity enhances the diversity and network complexity, rather than alters the ecological processes in community assembly of leaf-associated fungi.

植物多样性增加了亚热带森林中叶相关真菌的多样性和网络复杂性,而不是改变了群落组装过程。
植物多样性对生态系统的过程和功能有重大影响,但人们对植物多样性对叶片真菌群落组成的影响还知之甚少。在这项研究中,我们利用针对 rDNA 内部转录间隔 1 区域的扩增子测序技术,调查了中国亚热带树种丰富度实验中 1 到 16 个树种的叶片附生真菌和内生真菌群落。我们发现附生真菌和内生真菌的群落组合主要受随机过程的控制,附生真菌群落的扩散限制作用高于内生真菌群落,但内生真菌群落的选择作用高于附生真菌群落。植物与附生真菌的相互作用网络比植物与内生真菌的相互作用网络更为复杂(例如,连接程度更高,嵌套更强,但专业化和模块化程度较低)。此外,树种丰富度与网络复杂性以及附生真菌(α-、β-和γ-多样性)和内生真菌(β-和γ-多样性)的多样性呈正相关,但与随机过程和确定过程对附生真菌和内生真菌群落组装的贡献无关。这项研究表明,树种多样性提高了叶相关真菌群落组装的多样性和网络复杂性,而不是改变了群落组装的生态过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
15.10
自引率
8.80%
发文量
2907
审稿时长
3.2 months
期刊介绍: Science China Life Sciences is a scholarly journal co-sponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China, and it is published by Science China Press. The journal is dedicated to publishing high-quality, original research findings in both basic and applied life science research.
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